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Evaluation of Atmospheric Effects on Interferograms Using DEM Errors of Fixed Ground Points

机译:利用固定地面点的DEM误差评估大气对干涉图的影响

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摘要

High-resolution synthetic aperture radar (SAR) data are widely used for disaster monitoring. To extract damaged areas automatically, it is essential to understand the relationships among the sensor specifications, acquisition conditions, and land cover. Our previous studies developed a method for estimating the phase noise of interferograms using several pairs of TerraSAR-X series (TerraSAR-X and TanDEM-X) datasets. Atmospheric disturbance data are also necessary to interpret the interferograms; therefore, the purpose of this study is to estimate the atmospheric effects by focusing on the difference in digital elevation model (DEM) errors between repeat-pass (two interferometric SAR images acquired at different times) and single-pass (two interferometric SAR images acquired simultaneously) interferometry. Single-pass DEM errors are reduced due to the lack of temporal decorrelation and atmospheric disturbances. At a study site in the city of Tsukuba, a quantitative analysis of DEM errors at fixed ground objects shows that the atmospheric effects are estimated to contribute 75% to 80% of the total phase noise in interferograms.
机译:高分辨率合成孔径雷达(SAR)数据被广泛用于灾害监测。要自动提取损坏的区域,必须了解传感器规格,采集条件和土地覆盖之间的关系。我们以前的研究开发了一种使用几对TerraSAR-X系列数据集(TerraSAR-X和TanDEM-X)估计干涉图相位噪声的方法。还需要大气干扰数据来解释干涉图。因此,本研究的目的是通过关注重复通过(在不同时间获取的两个干涉式SAR图像)与单次通过(获取的两个干涉式SAR图像)之间的数字高程模型(DEM)误差的差异来估算大气影响。同时进行)。由于缺乏时间去相关和大气干扰,单程DEM错误得以减少。在筑波市的一个研究现场,对固定地面物体上的DEM误差进行了定量分析,结果表明,干涉图中干涉估计的大气效应占总相位噪声的75%至80%。

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